NAVY MIL-T-17221 B-1973 TRANSFORMERS POWER DISTRIBUTION SINGLE PHASE 400 HERTZ INSULATION SYSTEM CLASS 220 DEG C DRY (AIR COOLED) (NAVAL SHIPBOARD USE)《海军舰用干燥冷空气绝缘系统标准220DEG C单相的 4.pdf
《NAVY MIL-T-17221 B-1973 TRANSFORMERS POWER DISTRIBUTION SINGLE PHASE 400 HERTZ INSULATION SYSTEM CLASS 220 DEG C DRY (AIR COOLED) (NAVAL SHIPBOARD USE)《海军舰用干燥冷空气绝缘系统标准220DEG C单相的 4.pdf》由会员分享,可在线阅读,更多相关《NAVY MIL-T-17221 B-1973 TRANSFORMERS POWER DISTRIBUTION SINGLE PHASE 400 HERTZ INSULATION SYSTEM CLASS 220 DEG C DRY (AIR COOLED) (NAVAL SHIPBOARD USE)《海军舰用干燥冷空气绝缘系统标准220DEG C单相的 4.pdf(18页珍藏版)》请在麦多课文档分享上搜索。
1、Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,- io one or mor; other circuits at the same frequency usually with-changed values of voltage and current. 3.3.3 Dr t e transformer. A dry type transformer is a transformer cooled by the natural circdt2Eo
2、f air and not liquid-immersed. 3.3.4 Primary winding, 3.3.5 Cecondarx winding. 3.3.6 -e (in a transformer). The primary winding is the winding on the input side. . The secondary winding is the winding on the output side. A tap in a transformer is a connection brought out of a winding at some pTnF be
3、tween its extremities, usually to permit changing the voltage ratio. 3.3.7 Rated kilovoltam ere of a transformer. The rated kilovoltampere (kVA) of a trans- former is thermt which can be3eTivered for the time specified at approximately rated secondary voltage- and rated frequency without exceeding t
4、h; specif ied tmperature iimitations. 3.3.8 Ratio of fi transformer. The ratio of a transformer is the turn ratio of the transformer. - # 3.3.9 No-load losses of a transformer (excitation losses of a transformer), The no-load losses of a -rareTho losses in a transformer that-jlsxcited at rated volta
5、ge and frequency but not supplying load. NOTE: No-load losses include core loss, dielectric loss, and copper loss in the winding due to exciting current. # 3.3.10 Load losses of 5 transformer (im edance losses of a transformer). The load losses of a transformera= those losses ikotransformerhzhare in
6、cident to the carrying of load. NOTE: Load losses include I R loss in the windings due to load current, stray loss due to 2 stray fluxes in the windings, core clamps, and so forth, and to circulating currents, if any, in parallel windings. 3.3.11 Total losses of a transformer. The total losses of a
7、transformer are the losses represented bm Zeno-load losses and the load losses. 3.3.12 Re ulation of a transformer. The regulation of a transformer is the change in secondary voltaie, exprezed in percent of rated secondary voltage, which occurs when rated kVA output at a specified power factor (pf)
8、is reduced from rated value to zero, with the primary impressed terminal voltage maintained constant. the voltage rhodace Fated current through a winding of the transformer when another winding is short circuited, with the respective windings connected for rated voltage operation, and is expressed i
9、n percent of the rated voltage of the winding in which the voltage is measured. 3.3.14 Excitin current of 5 current. The exciting current of a transformer is the current whichdn-nang um excite the transformer when ali other windings are open-circuited, and is expressed in percent of the rated curren
10、t of the winding in which it i8 measured. designation omewe?nZtantaneous directions of currents in its leads. secondary leads are said to have the same polarity when at a given instant the current enters the primary lead in question and leaves the secondary lead in question in the same direction as
11、though the two leads formed a continuous circuit. The lead polarity of a single-phase distribution or power transformer may be either additive or subtractive. adjacent leads from the windings in question is connected together and voltage applied to one of tho windings: (a) The lead polarity is addit
12、ive if the voltage across the other two leads of the windings in question is greater than that of the higher voltage winding alone. (b) The lead polarity is subtractive if the voltage across the other two leads of the windings in question is less than that of the higher voltage winding alone. 3.3.13
13、 Im edance volta e of a transformer, The impedance voltage of a transformer is 3.3.15 Lead olarit of a transformer, The lead polarity of a transformer is a Primary and If one pair of 2 Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-3 Provided by IHS
14、Not for ResaleNo reproduction or networking permitted without license from IHS-,-,-MIL-T-1722lB (SHIPS) s 3.10 Characteristics, Characteristics of the transformers shall be as shown in table II* II Table II - 15OOC rise transformers. # II I I I baximum losses keauiation maximu5; 3.5 3.5 3.; i i 5 5
15、3.5 I5 15 570 1300 1460 950 YValues for inrush current are applicable to transformers with 450-volt primary. YTransformer to be submitted from each division for qualification (soe 4.3.1) ZSpacers used to attain the “F“ and “G“ dimensions specified in table III. ARegulation impedance and total losses
16、 shall he given at 15OOC. usee 4,3,1, resistance- primary and secondary windings for transformers of the same size and design shall he not more than minus 5 percent, more than minus 10 percent. sonnel. The transformers shall conform to the safety requirements of MIL-E-917. that: plus orus 1 percent
17、from the ratio of rated voltages indicated on the idetifi- cation plate. For transformers of other voltages maximum inrush current shall be the same percentage of the pzimary load Currents. 3.11 Windina resistance. On a.percentage basis, the average of the variations in The resistance of any one win
18、ding shall vary not 3.12 Safetx. 3.13 Ratio. Transformers shall he so designed that the turn ratio shall not vary more The transformers shall be designed for the utmost safety of ships per- 3.14 Polaritx. Transformers shall be of additive polarity. 3.15 O oratin noise. Transformers shall be designed
19、 to meet the noise level require- ments speciM.i;ra;. 3.16 ShockproonecE;. Transformers shall be designed to withstand high impact shock without mechanical damage or failure of parts as specified in MIL-S-901 for grade A, class I, type A (see 4.6.10). 3.17 Short circuit, Transformers shall be design
20、ed to withstand short circuit currents as specifieUin4.b.13. 3.18 Wei ht. Transformers complete with case and including wiring and mounting pro- 3.19 Volume, Transformers shall be SO designed and constructed that: the volume does The maximum overall dimension.in vision shal9 4.6.8 Weight and X - - X
21、 3.18 and 3.19 4.6.9 volume Shock X - - I 3.16 4.6.10 Post shock X I - - 3.16 4.6.10.3 Dielectric X I X - 3.20 4.6.11 Inrush current X X - - 3.10 4.6.12 Short circuit I X I XI-1- 13.17 r 4.6.13 - - Noise X X 3.15 4.6.14 I 4.4 Qualit conformance ins ection. At 3 year intervals after qualification ins
22、pection a traneford rating shail*ed from the applicable qualification division and subjected to the quality conformance, group A tests shown in table VI. This requirement is based on quantity production. quality conformance group A test before the manufacturer will again supply a transformer rating
23、in the particular qualification division, the tests shall be conducted on an appli- cable transformer of the subsequent contract or order. Each production line transformer shall he subjected to all the tests shown in table VI in the quality conformance, group B tests. In addition, production line tr
24、ansfomers shall also be subjected to the quality conformance group C tests on the selection basis shown in table VII. If it appears that more than 3 years will elapse-from the last Table VI1 - Sampling for quality conformance, group c tests. Number of transformers Minimum numbid d-voltacle outlet le
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